METHOD OF PRODUCING COPPER OXIDE NANOWHISKER STRUCTURES Russian patent published in 2012 - IPC C01B13/14 C01G3/02 C25B1/00 B82B3/00 B82Y40/00 

Abstract RU 2464224 C1

FIELD: chemistry.

SUBSTANCE: invention relates to high-temperature electrochemistry, particularly to electrolytic production of copper oxide nanowhisker structures, and can be used in catalyst engineering. Molten polytungstate, containing 10 mol % K2WO4, 55 mol % LI2WO4 and 35 mol % WO3, undergoes electrolysis in a pulsed potentiostatic mode. The voltage is equal to 1060-1090 mV and pulse duration is equal to 0.1 s. A platinum anode is used. The cathode used is copper foil.

EFFECT: method enables to obtain copper oxide nanowhisker structures.

3 dwg, 3 ex

Similar patents RU2464224C1

Title Year Author Number
ELECTROCHEMICAL METHOD OF PRODUCTION OF COPPER OXIDE NANOWHISKERS 2019
  • Vakarin Sergej Viktorovich
  • Semerikova Olga Leonidovna
  • Kosov Aleksandr Valerevich
  • Pankratov Aleksandr Alekseevich
  • Zajkov Yurij Pavlovich
RU2747920C1
ELECTROCHEMICAL METHOD OF FORMING OXIDE TUNGSTEN BRONZE CRYSTALS FROM NANOWHISKERS (VERSIONS) 2019
  • Vakarin Sergej Viktorovich
  • Semerikova Olga Leonidovna
  • Kosov Aleksandr Valerevich
  • Pankratov Aleksandr Alekseevich
  • Plaksin Sergej Vladimirovich
  • Zajkov Yurij Pavlovich
RU2706006C1
METHOD OF OBTAINING OF NANOWHISKER STRUCTURES OF OXIDE TUNGSTEN BRONZES ON COAL MATERIAL 2013
  • Vakarin Sergej Viktorovich
  • Semerikova Ol'Ga Leonidovna
  • Kondratjuk Vladimir Stepanovich
  • Surat Sergej Aleksandrovich
  • Pankratov Aleksandr Alekseevich
  • Plaksin Sergej Vladimirovich
  • Zajkov Jurij Pavlovich
  • Petrov Lev Alekseevich
  • Chupakhin Oleg Nikolaevich
RU2525543C1
METHOD FOR OBTAINING COPPER-CONTAINING MATERIAL IN FORM OF METAL SUBSTRATE WITH COPPER MICROPARTICLES APPLIED ON IT 2014
  • Vikarchuk Anatolij Alekseevich
  • Gryzunova Natal'Ja Nikolaevna
  • Romanov Aleksej Evgen'Evich
  • Denisova Alena Gennad'Evna
  • Mal'Tsev Andrej Vladimirovich
  • Shafeev Marat Ravilovich
RU2574629C1
PROCEDURE FOR PRODUCTION OF NANO-CRYSTAL COATING OF OXIDE TUNGSTEN BRONZES 2009
  • Vakarin Sergej Viktorovich
  • Meljaeva Aleksandra Andreevna
  • Pankratov Aleksandr Alekseevich
  • Kochedykov Viktor Anatol'Evich
  • Akashev Lev Aleksandrovich
  • Plaksin Sergej Vladimirovich
  • Zajkov Jurij Pavlovich
RU2426822C1
METHOD FOR MAKING NEEDLE OXIDE TUNGSTEN BRONZES 2007
  • Vakarin Sergej Viktorovich
RU2354753C2
ELECTROCHEMICAL METHOD FOR SYNTHESIS OF HYBRID CATALYST SYSTEMS BASED ON MODIFIED CARBON CONTAINING ON SURFACE TUNGSTEN OXIDE BRONZES 2015
  • Vakarin Sergej Viktorovich
  • Semerikova Olga Leonidovna
  • Kosov Aleksandr Valerevich
  • Petrov Lev Alekseevich
  • Mikushina Julija Vladimirovna
  • Shishmakov Andrej Borisovich
  • Pankratov Aleksandr Alekseevich
  • Plaksin Sergej Vladimirovich
  • Zajkov Jurij Pavlovich
  • Chupakhin Oleg Nikolaevich
RU2579119C1
METHOD OF PRODUCING NANO-NEEDLE-LIKE CATALYSTS FOR REDOX PROCESSES BASED ON TUNGSTEN OXIDE BRONZES 2010
  • Vakarin Sergej Viktorovich
  • Meljaeva Aleksandra Andreevna
  • Semerikova Ol'Ga Leonidovna
  • Kondratjuk Vladimir Stepanovich
  • Pankratov Aleksandr Alekseevich
  • Zajkov Jurij Pavlovich
  • Petrov Lev Alekseevich
  • Mikushina Julija Vladimirovna
  • Shishmakov Andrej Borisovich
  • Chupakhin Oleg Nikolaevich
RU2456079C1
ELECTROCHEMICAL METHOD FOR TREATMENT OF SINGLE-CRYSTAL SILICON PLATES FOR SOLAR BATTERIES 2020
  • Vakarin Sergej Viktorovich
  • Semerikova Olga Leonidovna
  • Kosov Aleksandr Valerevich
  • Pankratov Aleksandr Alekseevich
  • Trofimov Aleksej Alekseevich
  • Leonova Anastasiya Maksimovna
  • Leonova Nataliya Maksimovna
  • Solodyankina Diana Mikhajlovna
  • Zajkov Yurij Pavlovich
RU2749534C1
METHOD OF PRODUCING COPPER-CONTAINING NANO-CATALYSTS WITH DEVELOPED SURFACE 2013
RU2611620C2

RU 2 464 224 C1

Authors

Vakarin Sergej Viktorovich

Meljaeva Aleksandra Andreevna

Semerikova Ol'Ga Leonidovna

Kondratjuk Vladimir Stepanovich

Pankratov Aleksandr Alekseevich

Plaksin Sergej Vladimirovich

Zajkov Jurij Pavlovich

Dates

2012-10-20Published

2011-05-20Filed